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Waste Gasification Reactor: Syngas Composition (2D)

2D downdraft waste gasifier simulator: instead of orbiting a 3D reactor, watch a schematic zone cross-section with falling waste and rising syngas bubbles alongside a live composition-vs-equivalence-ratio chart, driven by the same Boudouard / water-gas / methanation trends as the 3D version.

Energy & Thermodynamics2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-waste-management-ecology ↗ Open standalone

This is the 2D-native counterpart to the 3D waste gasification reactor simulator. Rather than orbiting a rendered reactor stack, it draws the two things that actually generate the physics: a schematic zone cross-section (drying, pyrolysis, oxidation, reduction) with waste particles falling through it and syngas bubbles rising out through the offtake, and a live composition-vs-equivalence-ratio chart showing how CO, H₂, CH₄ and CO₂ trade off across the whole ER range at your current temperature and moisture setting, with the current operating point marked. The same engineering-scale gasification model drives both the 3D and 2D versions, so adjusting equivalence ratio, reactor temperature, feed moisture and throughput moves the syngas composition, heating value and cold-gas efficiency identically — just visualised as the schematic and trend data it is, instead of a rendered 3D scene.

⚙ Under the hood

2D downdraft waste gasifier simulator: watch a schematic zone cross-section with falling waste and rising syngas bubbles alongside a live composition-vs-equivalence-ratio chart, driven by the same Boudouard, water-gas and methanation trends as the 3D version.

waste gasificationsyngasequivalence ratioBoudouard reactioncold gas efficiencyrenewable energy

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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